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Origin of the Reflectin Gene and Hierarchical Assembly of Its Protein

  • Zhe Guan
  • , Tiantian Cai
  • , Zhongmin Liu
  • , Yunfeng Dou
  • , Xuesong Hu
  • , Peng Zhang
  • , Xin Sun
  • , Hongwei Li
  • , Yao Kuang
  • , Qiran Zhai
  • , Hao Ruan
  • , Xuanxuan Li
  • , Zeyang Li
  • , Qihui Zhu
  • , Jingeng Mai
  • , Qining Wang
  • , Luhua Lai
  • , Jianguo Ji
  • , Haiguang Liu
  • , Bin Xia
  • Taijiao Jiang, Shu Jin Luo, Hong Wei Wang, Can Xie
  • Peking University
  • Tsinghua University
  • Suzhou Institute of Systems Medicine, Chinese Academy of Medical Sciences & Peking Union Medical College
  • Institute of Biophysics Chinese Academy of Sciences
  • College of Chemistry and Molecular Engineering, Peking University
  • The Chinese Academy of Engineering Physics
  • Tsinghua University

Research output: Contribution to journalArticlepeer-review

40 Scopus citations

Abstract

Cephalopods, the group of animals including octopus, squid, and cuttlefish, have remarkable ability to instantly modulate body coloration and patterns so as to blend into surrounding environments [1, 2] or send warning signals to other animals [3]. Reflectin is expressed exclusively in cephalopods, filling the lamellae of intracellular Bragg reflectors that exhibit dynamic iridescence and structural color change [4]. Here, we trace the possible origin of the reflectin gene back to a transposon from the symbiotic bioluminescent bacterium Vibrio fischeri and report the hierarchical structural architecture of reflectin protein. Intrinsic self-assembly, and higher-order assembly tightly modulated by aromatic compounds, provide insights into the formation of multilayer reflectors in iridophores and spherical microparticles in leucophores and may form the basis of structural color change in cephalopods. Self-assembly and higher-order assembly in reflectin originated from a core repeating octapeptide (here named protopeptide), which may be from the same symbiotic bacteria. The origin of the reflectin gene and assembly features of reflectin protein are of considerable biological interest. The hierarchical structural architecture of reflectin and its domain and protopeptide not only provide insights for bioinspired photonic materials but also serve as unique “assembly tags” and feasible molecular platforms in biotechnology. Guan et al. trace the likely origin of reflectin gene in cephalopods to a transposon in symbiotic Vibrio fischeri and report the intrinsic self-assembly and higher-order assembly modulated by aromatic compounds of reflectin protein. Reflectins express exclusively in cephalopods and play important roles in camouflage and structural color change.

Original languageEnglish
Pages (from-to)2833-2842.e6
JournalCurrent Biology
Volume27
Issue number18
DOIs
StatePublished - 25 Sep 2017
Externally publishedYes

Keywords

  • cephalopods
  • higher-order assembly
  • horizontal gene transfer
  • iridescence
  • origin
  • reflectin
  • self-assembly
  • structural color

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